AbstractThe development of neural tissue starts with the activation of early neural genes such as the SoxB1 transcription factors, which are expressed in response to signaling molecules. Neural progenitors in the inner ear are only generated in the anterior placodal domain, but the mechanisms that determine when and how otic neural fate is acquired are still unknown. Here, we show that Sox3 expression becomes restricted to the anterior territory of the chick otic field and that misexpression of Sox3 induces Sox2 and Delta1 in the non-neurogenic otic territory. This suggests that Sox3 plays a central role in the establishment of an otic neural fate. Furthermore, Sox3 down-regulates the expression of Lmx1b, a marker of the posterior non-neuro...
Otic neuronal precursors are specified in the otic placode but interestingly do so only in the anter...
AbstractThe inner ear develops from the otic placode, one of the cranial placodes that arise from a ...
Sox2, a HMG box transcription factor, is well known for its role in stem cell maintenance, iPS (indu...
The development of neural tissue starts with the activation of early neural genes such as the SoxB1 ...
The vertebrate inner ear is a structurally complex sensory organ responsible for detecting sound and...
AbstractVertebrate cranial sensory organs are derived from region at the border of the anterior neur...
The otic placode, a specialized region of ectoderm, gives rise to components of the inner ear and sh...
En els darrers anys s'ha produït un gran avenç en l'enteniment dels mecanismes implicats en la induc...
AbstractThe inner ear epithelium, with its complex array of sensory, non-sensory, and neuronal cell ...
AbstractThe epibranchial placodes are ectodermal thickenings that generate sensory neurons of the di...
AbstractThe HMG-domain-containing transcription factor Sox9 is an important regulator of chondrogene...
<div><p>The inner ear develops from a patch of thickened cranial ectoderm adjacent to the hindbrain ...
During embryonic development, hair cells and support cells in the sensory epithelia of the inner ear...
The inner ear develops from a patch of thickened cranial ectoderm adjacent to the hindbrain called t...
During embryonic development, hair cells and support cells in the sensory epithelia of the inner ear...
Otic neuronal precursors are specified in the otic placode but interestingly do so only in the anter...
AbstractThe inner ear develops from the otic placode, one of the cranial placodes that arise from a ...
Sox2, a HMG box transcription factor, is well known for its role in stem cell maintenance, iPS (indu...
The development of neural tissue starts with the activation of early neural genes such as the SoxB1 ...
The vertebrate inner ear is a structurally complex sensory organ responsible for detecting sound and...
AbstractVertebrate cranial sensory organs are derived from region at the border of the anterior neur...
The otic placode, a specialized region of ectoderm, gives rise to components of the inner ear and sh...
En els darrers anys s'ha produït un gran avenç en l'enteniment dels mecanismes implicats en la induc...
AbstractThe inner ear epithelium, with its complex array of sensory, non-sensory, and neuronal cell ...
AbstractThe epibranchial placodes are ectodermal thickenings that generate sensory neurons of the di...
AbstractThe HMG-domain-containing transcription factor Sox9 is an important regulator of chondrogene...
<div><p>The inner ear develops from a patch of thickened cranial ectoderm adjacent to the hindbrain ...
During embryonic development, hair cells and support cells in the sensory epithelia of the inner ear...
The inner ear develops from a patch of thickened cranial ectoderm adjacent to the hindbrain called t...
During embryonic development, hair cells and support cells in the sensory epithelia of the inner ear...
Otic neuronal precursors are specified in the otic placode but interestingly do so only in the anter...
AbstractThe inner ear develops from the otic placode, one of the cranial placodes that arise from a ...
Sox2, a HMG box transcription factor, is well known for its role in stem cell maintenance, iPS (indu...